Key result
PARP inhibitor PJ34 improves cardiac function and vascular relaxation in preclinical heart failure.
Why the study?
Does the PARP inhibitor PJ34 improve cardiac and endothelial dysfunction in a rat model of chronic heart failure?
Does the PARP inhibitor PJ34 improve cardiac and endothelial dysfunction in a rat model of chronic heart failure?
PARP inhibition with PJ34 improves cardiac dysfunction and vascular relaxation in a rat model of chronic heart failure, suggesting a potential novel therapeutic pathway.
OBJECTIVES: We investigated the effects of a novel ultrapotent poly(adenosine diphosphate-ribose) polymerase (PARP) inhibitor, PJ34, on cardiac and endothelial dysfunction in a rat model of chronic heart failure (CHF). BACKGROUND: Overactivation of the nuclear enzyme PARP importantly contributes to the development of cell dysfunction and tissue injury in various pathophysiologic conditions associated with oxidative stress, including myocardial reperfusion injury, heart transplantation, stroke, shock, and diabetes. METHODS: Chronic heart failure was induced in Wistar rats by chronic ligation of the left anterior descending coronary artery. Left ventricular (LV) function and ex vivo vascular contractility and relaxation were measured 10 weeks after the surgery. Nitrotyrosine (NT) formation and PARP activation were detected by immunohistochemistry. RESULTS: Chronic heart failure induced increased NT formation and PARP activation in the myocardium and intramural vasculature, depressed LV performance, and impaired vascular relaxation of aortic rings. PJ34 significantly decreased myocardial PARP activation but not NT formation, and improved both cardiac dysfunction and vascular relaxation. CONCLUSIONS: Poly(ADP-ribose) polymerase inhibition represents a novel approach for the experimental treatment of CHF.
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Pacher et al. (2002) studied Chronic heart failure. PJ34 vs. Untreated chronic heart failure was evaluated on Left ventricular function, ex vivo vascular contractility and relaxation, nitrotyrosine formation, and PARP activation. The PARP inhibitor PJ34 significantly decreased myocardial PARP activation and improved both cardiac dysfunction and vascular relaxation in a rat model of chronic heart failure.
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